Department of Chemistry, Faculty of Science and Technology, Meijo University, Tenpaku, Nagoya 468, Japan.
Plant Physiol. 1986 May;81(1):60-6. doi: 10.1104/pp.81.1.60.
Changes in the amount of P700-chlorophyll a protein complex, plastocyanin, and cytochrome b(6)/f complex during greening of pea (Pisum sativum L.), wheat (Triticum aestivum L.), and barley (Hordeum vulgare L.) leaves were analyzed by an immunochemical quantification method. Neither subunit I nor II of P700-chlorophyll a protein complex could be detected in the etiolated seedlings of all three plants and the accumulation of these subunits was shown to be light dependent. On the other hand, a small amount of plastocyanin was present in the etiolated seedlings of all three plants and its level increased about 30-fold during the subsequent 72-hour greening period. Furthermore, cytochrome f, cytochrome b(6), and Rieske Fe-S center protein in cytochrome b(6)/f complex were also present in the etiolated seedings of all three plants. The level of each subunit component increased differently during greening and their induction pattern differed from species to species. The accumulation of cytochrome b(6)/f complex was most profoundly affected by light in pea leaves, and the levels of cytochrome f, cytochrome b(6), and Rieske Fe-S center protein increased during greening about 10-, 20-, and more than 30-fold, respectively. In comparison to the case of pea seedlings, in wheat and barley leaves the level of each subunit component increased much less markedly. The results suggest that light regulates the accumulation of not only the chlorophyll protein complex but also the components of the electron transport systems.
采用免疫化学定量法分析了豌豆(Pisum sativum L.)、小麦(Triticum aestivum L.)和大麦(Hordeum vulgare L.)叶片在变绿过程中 P700-叶绿素 a 蛋白复合物、质体蓝素和细胞色素 b(6)/f 复合物的量的变化。在这三种植物的黄化幼苗中均无法检测到 P700-叶绿素 a 蛋白复合物的亚基 I 或 II,并且这些亚基的积累依赖于光。另一方面,在这三种植物的黄化幼苗中都存在少量的质体蓝素,并且在随后的 72 小时变绿过程中其水平增加了约 30 倍。此外,细胞色素 b(6)/f 复合物中的细胞色素 f、细胞色素 b(6)和 Rieske Fe-S 中心蛋白也存在于这三种植物的黄化幼苗中。在变绿过程中,每个亚基成分的水平增加方式不同,其诱导模式因物种而异。细胞色素 b(6)/f 复合物的积累受光的影响最大,在豌豆叶片的变绿过程中,细胞色素 f、细胞色素 b(6)和 Rieske Fe-S 中心蛋白的水平分别增加了约 10 倍、20 倍和 30 倍以上。与豌豆幼苗相比,在小麦和大麦叶片中,每个亚基成分的水平增加得不太明显。结果表明,光不仅调节叶绿素蛋白复合物的积累,而且还调节电子传递系统的组分的积累。